Motivation: Advances in high-throughput genotyping and next generation sequencing have generated a vast amount of human genetic variation data. Single nucleotide substitutions within protein coding regions are of particular importance owing to their potential to give rise to amino acid substitutions that affect protein structure and function which may ultimately lead to a disease state. Over the last decade, a number of computational methods have been developed to predict whether such amino acid substitutions result in an altered phenotype. Although these methods are useful in practice, and accurate for their intended purpose, they are not well suited for providing probabilistic estimates of the underlying disease mechanism. Results: We ...
International genome sequencing projects have produced billions of nucleotides (letters) of DNA sequ...
A major area of effort in current genomics is to distinguish mutations that are functionally neutral...
The inclusion of a mutation in a pathology-based database such as the Human Gene Mutation Database (...
Motivation: Advances in high-throughput genotyping and next generation sequencing have generated a v...
Motivation: Advances in high-throughput genotyping and next generation sequencing have generated a v...
An important challenge in translational bioinformatics is to understand how genetic variation gives ...
An important challenge in translational bioinformatics is to understand how genetic variation gives ...
An important challenge in translational bioinformatics is to understand how genetic variation gives ...
Next-generation sequencing methods have not only allowed an understanding of genome sequence variati...
One of the great challenges in genetics is to accurately separate functional from neutral variation ...
Identifying pathogenic variants and underlying functional alterations is challenging. To this end, w...
Elucidating the precise molecular events altered by disease-causing genetic variants represents a ma...
Identifying pathogenic variants and underlying functional alterations is challenging. To this end, w...
Identifying pathogenic variants and underlying functional alterations is challenging. To this end, w...
Identifying pathogenic variants and underlying functional alterations is challenging. To this end, w...
International genome sequencing projects have produced billions of nucleotides (letters) of DNA sequ...
A major area of effort in current genomics is to distinguish mutations that are functionally neutral...
The inclusion of a mutation in a pathology-based database such as the Human Gene Mutation Database (...
Motivation: Advances in high-throughput genotyping and next generation sequencing have generated a v...
Motivation: Advances in high-throughput genotyping and next generation sequencing have generated a v...
An important challenge in translational bioinformatics is to understand how genetic variation gives ...
An important challenge in translational bioinformatics is to understand how genetic variation gives ...
An important challenge in translational bioinformatics is to understand how genetic variation gives ...
Next-generation sequencing methods have not only allowed an understanding of genome sequence variati...
One of the great challenges in genetics is to accurately separate functional from neutral variation ...
Identifying pathogenic variants and underlying functional alterations is challenging. To this end, w...
Elucidating the precise molecular events altered by disease-causing genetic variants represents a ma...
Identifying pathogenic variants and underlying functional alterations is challenging. To this end, w...
Identifying pathogenic variants and underlying functional alterations is challenging. To this end, w...
Identifying pathogenic variants and underlying functional alterations is challenging. To this end, w...
International genome sequencing projects have produced billions of nucleotides (letters) of DNA sequ...
A major area of effort in current genomics is to distinguish mutations that are functionally neutral...
The inclusion of a mutation in a pathology-based database such as the Human Gene Mutation Database (...